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A Rapid Method for the Identification of Fresh and Processed Pagellus erythrinus Species against Frauds
by
Paolo Sordino
, Iolanda Venuti
, Elio Biffali
, Celestina Mascolo
, Marina Ceruso
, Aniello Anastasio
, Pasquale De Luca
, Giorgio Smaldone
, Tiziana Pepe
in
Amplification
/ assays
/ Bar codes
/ barcoding
/ Biomarkers
/ Chemical technology
/ Commercialization
/ common pandora
/ Cytochrome
/ Cytochrome b
/ Cytochrome-c oxidase
/ Cytochromes
/ Deoxyribonucleic acid
/ Divergence
/ DNA
/ DNA barcoding
/ Erythrinus
/ Fish
/ fish species authentication
/ fish species authentication, mtDNA, mitogenomics, common pandora, Pagellus erythrinus, Sparidae
/ Food
/ Food science
/ Fraud
/ Genes
/ Genetic analysis
/ Genetic distance
/ Genetic diversity
/ Genetic testing
/ genetic variation
/ Genomes
/ Identification
/ Mitochondria
/ Mitochondrial DNA
/ mitogenomics
/ Morphology
/ mtDNA
/ nucleotide sequences
/ Pagellus erythrinus
/ porgy
/ quantitative polymerase chain reaction
/ rapid methods
/ Seafood
/ seafoods
/ Sparidae
/ Species
/ species identification
/ TP1-1185
2020
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A Rapid Method for the Identification of Fresh and Processed Pagellus erythrinus Species against Frauds
by
Paolo Sordino
, Iolanda Venuti
, Elio Biffali
, Celestina Mascolo
, Marina Ceruso
, Aniello Anastasio
, Pasquale De Luca
, Giorgio Smaldone
, Tiziana Pepe
in
Amplification
/ assays
/ Bar codes
/ barcoding
/ Biomarkers
/ Chemical technology
/ Commercialization
/ common pandora
/ Cytochrome
/ Cytochrome b
/ Cytochrome-c oxidase
/ Cytochromes
/ Deoxyribonucleic acid
/ Divergence
/ DNA
/ DNA barcoding
/ Erythrinus
/ Fish
/ fish species authentication
/ fish species authentication, mtDNA, mitogenomics, common pandora, Pagellus erythrinus, Sparidae
/ Food
/ Food science
/ Fraud
/ Genes
/ Genetic analysis
/ Genetic distance
/ Genetic diversity
/ Genetic testing
/ genetic variation
/ Genomes
/ Identification
/ Mitochondria
/ Mitochondrial DNA
/ mitogenomics
/ Morphology
/ mtDNA
/ nucleotide sequences
/ Pagellus erythrinus
/ porgy
/ quantitative polymerase chain reaction
/ rapid methods
/ Seafood
/ seafoods
/ Sparidae
/ Species
/ species identification
/ TP1-1185
2020
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A Rapid Method for the Identification of Fresh and Processed Pagellus erythrinus Species against Frauds
by
Paolo Sordino
, Iolanda Venuti
, Elio Biffali
, Celestina Mascolo
, Marina Ceruso
, Aniello Anastasio
, Pasquale De Luca
, Giorgio Smaldone
, Tiziana Pepe
in
Amplification
/ assays
/ Bar codes
/ barcoding
/ Biomarkers
/ Chemical technology
/ Commercialization
/ common pandora
/ Cytochrome
/ Cytochrome b
/ Cytochrome-c oxidase
/ Cytochromes
/ Deoxyribonucleic acid
/ Divergence
/ DNA
/ DNA barcoding
/ Erythrinus
/ Fish
/ fish species authentication
/ fish species authentication, mtDNA, mitogenomics, common pandora, Pagellus erythrinus, Sparidae
/ Food
/ Food science
/ Fraud
/ Genes
/ Genetic analysis
/ Genetic distance
/ Genetic diversity
/ Genetic testing
/ genetic variation
/ Genomes
/ Identification
/ Mitochondria
/ Mitochondrial DNA
/ mitogenomics
/ Morphology
/ mtDNA
/ nucleotide sequences
/ Pagellus erythrinus
/ porgy
/ quantitative polymerase chain reaction
/ rapid methods
/ Seafood
/ seafoods
/ Sparidae
/ Species
/ species identification
/ TP1-1185
2020
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A Rapid Method for the Identification of Fresh and Processed Pagellus erythrinus Species against Frauds
Journal Article
A Rapid Method for the Identification of Fresh and Processed Pagellus erythrinus Species against Frauds
2020
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Overview
The commercialization of porgies or seabreams of the family Sparidae has greatly increased in the last decade, and some valuable species have become subject to seafood substitution. DNA regions currently used for fish species identification in fresh and processed products belong to the mitochondrial (mt) genes cytochrome b (Cytb), cytochrome c oxidase I (COI), 16S and 12S. However, these markers amplify for fragments with lower divergence within and between some species, failing to provide informative barcodes. We adopted comparative mitogenomics, through the analysis of complete mtDNA sequences, as a compatible approach toward studying new barcoding markers. The intent is to develop a specific and rapid assay for the identification of the common pandora Pagellus erythrinus, a sparid species frequently subject to fraudulent replacement. The genetic diversity analysis (Hamming distance, p-genetic distance, gene-by-gene sequence variability) between 16 sparid mtDNA genomes highlighted the discriminating potential of a 291 bp NAD2 gene fragment. A pair of species-specific primers were successfully designed and tested by end-point and real-time PCR, achieving amplification only in P. erythrinus among several fish species. The use of the NAD2 barcoding marker provides a rapid presence/absence method for the identification of P. erythrinus.
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